On Molecular and Microscopic Science, Volume 2 (of 2)Somerville, Mary
History
On Molecular and Microscopic Science, Volume 2 (of 2)
Somerville, Mary
Matter -- Constitution; Microscopy; Natural history
The Difflugiæ are found in rivulets and pools containing aquatic plants;
the condition of the water and the nature of the soil have a great
influence on the form of their shell.
The Euglyphæ is the third group of fresh-water rhizopods. They are
extremely minute, and there are no mineral particles whatever on their
shells, the axes of which do not coincide with the aperture. The
interior of the animal is like that of the Arcella and Difflugia, but it
differs from them in as much as the pseudopodia and ectosarc, or
external coat, are finely granular, and the whole mass of the body
possesses a decided degree of adhesive viscidity. The pseudopodia are
filiform, tapering, radiating, and readily coalesce; and ‘as if to
compensate for the restricted power of locomotion, compared with that of
the Amœba proper, the pseudopodia of the Euglyphæ are much more active.
The rapidity with which they admit of being projected outwards, and
withdrawn into the shell, is unequalled in any other form, presenting
the most wonderful example of inherent contractility in an amorphous
animal substance, that is to be met with in either of the great organic
kingdoms.’[6]
The order Reticularia, with a very few exceptions, are animals dwelling
in calcareous microscopic shells, and differing essentially in
constitution from all the preceding Rhizopods. The ectosarc or
surface-layer of the sarcode in the Amœba and Actinophrys has so much
consistence, that their pseudopodia, which are derived from it, have a
decidedly firm outline and never coalesce; whereas in the order
Reticularia, the sarcode is merely a semi-fluid protoplasm or colourless
viscid fluid, without the smallest surface-layer or film, so that their
pseudopodia possess no definiteness either in shape, size or number.
Sometimes they are cylindrical, and sometimes form broad flat bands,
whilst they are often drawn into threads of such extreme tenuity, as to
require a high magnifying power to discern them. They coalesce and fuse
into each other so freely and so completely when they meet, that no part
of their substance can be regarded as having more than a viscous
consistence. Their margins are not defined by continuous lines, but are
broken by granules irregularly disposed among them, so that they appear
as if torn; and these granules, when the animal is in a state of
activity, are in constant motion, passing along the pseudopodia from one
end to the other, or passing through the connecting threads of this
animated network from one pseudopodium to another, with considerable
rapidity, analogous to the movement of the particles in the cells of the
hairs of the Tradescantia and other plants.[7]
Public-domain text, read in full here on John Shaqi.
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